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Beskrivning
Part Three highlights optogenetic control of organelles, and Part Four introduces technical tools required for light induction in optogenetic experiments, as well as a method for performing and analyzing optogenetic cell-cell adhesion.
Optogenetic Control of B. subtilis Gene Expression using the CcaSR System.- The Yeast Optogenetic Toolkit (yOTK) for Spatiotemporal Control of gene Expression in Budding Yeast.- Optoribogenetic Modulation of Transcription.- A Red Light-Activatable Endogenous Gene Transcription System with Red-CPTS.- Targeted Activation of Programmed Cell Death Pathways by Optogenetics.- Modulating Optogenetic YAP In Vitro and In Vivo.- Design and Use of AsLOV2-Based Optogenetic Tools for Actin Imaging.- Optogenetic Engineered Living Materials.- Light-Controlled Secretion and Injection of Proteins into Eukaryotic Cells by Optogenetic Control of the Bacterial Type III Secretion System.- Synthesis and Application of Photcaged Isopropyl β-d-1-thiogalactopyranoside for Light-Mediated Control of Bacterial Gene Expression.- Optogenetic Clustering and Stimulation of the T Cell Receptor in Non-Genetically Modified Human T Cells.- Extracellular Optogenetics to Interrogate Unmodified Primary Cell Functions.- Alternating Cellular Functions by Optogenetic Control of Organelles.- Light-Inducible Deformation of Mitochondria in Live Cells.- Chlorophyll-Based Optogenetics to Control Membraneless Organelles.- Automated Plate Reader-Based Assays of Light-Activated GPCRs.- Modular Light-Emitting Diode Shelving Systems for Scalable Optogenetics.- Analysis of Light-Controlled Artificial Cell-Cell Adhesions.